Lanzhou, 730000
China
Chinese Academy of Sciences (CAS) - State Key Laboratory of Solid Lubrication
High entropy boride ceramics, Solid solution reaction method, Boron/Carbon thermal reduction method, Microstructure, Mechanical properties
High entropy boride ceramics, Solid solution reaction method, Boron/Carbon thermal reduction method, microstructure, Mechanical properties
HfC-SiC, WC addition, Oxyacetylene ablation, Oxide behavior
E. First-principles calculations, C. metal-doped, D. optical properties, A. colored ceramics
Molecular Dynamics, Porous silicon nitride ceramics, Pore size, Pore-forming agent, PMMA
Si3N4 ceramics, Silane coupling agent, pore structure, porosity
molecular dynamics, Porous silicon nitride ceramics, Pore size, Pore-forming agent, PMMA
First principles, β-Si3N4, Transition metal, Electronic property, Elastic Property
Si3N4, network structure, fracture toughness, damage tolerance, R-curve
Laser cladding, microstructure, Crack, Eutectic structure, Wear properties.
first-principles calculations, Surface adsorption, Electronic structures, Optical properties
Cu-containing Si3N4, in-situ method, Cu3Si phase, fracture toughness, tribological properties
Aluminum matrix composites, NanoBlitz 3D method, Mechanical property mapping images, Mathematical models
Iron-based high-entropy alloys, Tribological properties, high temperature, Wear mechanism
Titanium matrix composites, discharge plasma sintering, mechanical properties, sintering mechanism, Strengthening mechanism
Si3N4, bio-inspired, layered ceramics, strength, high toughness